首页> 外文期刊>Graefe's archive for clinical and experimental ophthalmology: Albrecht von Graefes Archiv fur klinische und experimentelle Opthalmologie >Combined in-depth, 3D, en face imaging of the optic disc, optic disc pits and optic disc pit maculopathy using swept-source megahertz OCT at 1050?nm
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Combined in-depth, 3D, en face imaging of the optic disc, optic disc pits and optic disc pit maculopathy using swept-source megahertz OCT at 1050?nm

机译:联合深入,3D,光盘的面部成像,光盘凹坑和光盘坑Maculopathy使用扫掠源Megahertz OCT 1050?NM

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Abstract Purpose To demonstrate papillary imaging of eyes with optic disc pits (ODP) or optic disc pit associated maculopathy (ODP-M) with ultrahigh-speed swept-source optical coherence tomography (SS-OCT) at 1.68 million A-scans/s. To generate 3D-renderings of the papillary area with 3D volume-reconstructions of the ODP and highly resolved en face images from a single densely-sampled megahertz-OCT (MHz-OCT) dataset for investigation of ODP-characteristics. Methods A 1.68?MHz-prototype SS-MHz-OCT system at 1050?nm based on a Fourier-domain mode-locked laser was employed to acquire high-definition, 3D datasets with a dense sampling of 1600?×?1600 A-scans over a 45° field of view. Six eyes with ODPs, and two further eyes with glaucomatous alteration or without ocular pathology are presented. 3D-rendering of the deep papillary structures, virtual 3D-reconstructions of the ODPs and depth resolved isotropic en face images were generated using semiautomatic segmentation. Results 3D-rendering and en face imaging of the optic disc, ODPs and ODP associated pathologies showed a broad spectrum regarding ODP characteristics. Between individuals the shape of the ODP and the appending pathologies varied considerably. MHz-OCT en face imaging generates distinct top-view images of ODPs and ODP-M. MHz-OCT generates high resolution images of retinal pathologies associated with ODP-M and allows visualizing ODPs with depths of up to 2.7?mm. Conclusions Different patterns of ODPs can be visualized in patients for the first time using 3D-reconstructions and co-registered high-definition en face images extracted from a single densely sampled 1050?nm megahertz-OCT (MHz-OCT) dataset. As the immediate vicinity to the SAS and the site of intrapapillary proliferation is located at the bottom of the ODP it is crucial to image the complete structure and the whole depth of ODPs. Especially in very deep pits, where non-swept-source OCT fails to reach the bottom, conventional swept-source devices and the MHz-OCT alike are feasible and beneficial methods to examine deep details of optic disc pathologies, while the MHz-OCT bears the advantage of an essentially swifter imaging process.
机译:摘要目的是用超高速扫描源光学相干断层扫描(SS-OCT)为168万A-Scans / s,摘要目的用光盘凹槽(ODP)或视光盘坑(ODP-M)的乳头状疗法(ODP-M)的乳头状疗法(ODP-M)。为了从ODP的3D体积重建生成乳头状区域的3D渲染,以及来自单个密集采样的MEGAHERTZ-OCT(MHz-OCT)数据集的高度分辨的EN脸部图像,用于研究ODP特征。方法采用1.68?MHz - 原型SS-MHz-OCT系统,基于傅里叶域模式锁定激光器,采用致密采样为1600的高清,3D数据集1600?×1600A - 扫描超过45°的视野。六只眼睛用ODPS,并提出了两只眼镜术改变或没有眼部病理学的另外两只眼睛。使用半自动分割产生深度乳头结构的3D渲染,散毛和深度分离的各向同性en面部图像的虚拟3D重建。结果光盘,ODPS和ODP相关病理的3D渲染和恩脸成像显示出关于ODP特性的广泛频谱。在个人之间,ODP的形状和附加病理变化很大。 MHz-OCT en脸部成像生成不同的顶视图的ODPS和ODP-M。 MHz-OCT产生与ODP-M相关的视网膜病理的高分辨率图像,并允许在深度为2.7Ωmm的深度可视化ODP。结论使用3D-Reconstrustions和来自单个密集采样的1050Ω·NM Megahertz-OCT(MHz-OCT)数据集中提取的3D-Reconstructions和共登记的高清脸图像,首次可视化患者的不同模式。作为SAS的直接附近和蛋白碱增殖的部位位于ODP的底部,它对图像图像完全结构和整个ODP的深度至关重要。特别是在非常深的坑中,其中非扫掠源10号未能到达底部,传统的扫掠源设备和MHz-OCT是可行的和有益的方法,用于检查光盘病理的深细节,而MHz-OCT熊基本上播一个的成像过程的优点。

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